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首页> 外文期刊>Journal of the American Oil Chemists' Society >Supercritical CO2 Extraction of Flax Lignans
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Supercritical CO2 Extraction of Flax Lignans

机译:亚麻木质素的超临界CO2萃取

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摘要

Lignans, such as flaxseed secoisolariciresinol diglucoside (SDG), have been implicated in the prevention of hormonally related cancers and other prevalent diseases. Lignans are typically extracted using organic solvents, which must then be removed from the extract. Supercritical carbon dioxide (SC-CO2) is a non-toxic, inexpensive solvent, which, when combined with polar modifiers, can be used to extract polar phenolic compounds, such as SDG. The effects of processing conditions and pre-treatment on the extraction of SDG using SC-CO2 were investigated. Extraction from defatted flaxseed was performed with SC-CO2 modified with ethanol at levels of 0, 10 and 20 mol% at different temperature (40, 50 and 60 °C) and pressure (35, 40 and 45 MPa) conditions. Extracts were analyzed using RP-HPLC. The condition (7.8 mol% ethanol, 45 MPa and 60 °C) which produced the maximum CO2 loading of SDG (0.49 μg/g CO2) was used for the pre-treatment study, in which flaxseed defatted with petroleum ether and SC-CO2, full-fat hulls, defatted hulls and pre-hydrolyzed flaxseed were used. Temperature, pressure and solvent modifier level had no significant effect (p 0.05) on the SDG loading of CO2. However, pre-hydrolyzed seed resulted in a significantly (p ≤ 0.05) higher CO2 loading of SDG (3.8 μg/g CO2) compared to the other treatments studied. The yields obtained represented only a small fraction of the original lignan content (15 mg/g petroleum ether defatted flaxseed).
机译:木质素,例如亚麻籽的芥子油苷二烯醇二葡萄糖苷(SDG),已被证明可预防激素相关的癌症和其他流行疾病。木质素通常使用有机溶剂提取,然后必须将其从提取物中除去。超临界二氧化碳(SC-CO2 )是一种无毒,廉价的溶剂,与极性改性剂结合使用时,可用于萃取极性酚类化合物,例如SDG。研究了工艺条件和预处理对SC-CO2萃取SDG的影响。在不同温度(40、50和60°C)和压力(35、40和45 MPa)条件下,以0、10和20 mol%的乙醇改性的SC-CO2 进行脱脂亚麻籽的提取。使用RP-HPLC分析提取物。产生SDG最大CO2负荷(0.49μg/ g CO2 )的条件(7.8 mol%乙醇,45 MPa和60°C)用于亚麻籽的预处理研究。用石油醚和SC-CO2脱脂,使用全脂皮,脱脂皮和预水解亚麻籽。温度,压力和溶剂改性剂的含量对CO2 SDG负载量无显着影响(p> 0.05)。然而,与其他研究方法相比,预水解种子导致SDG的CO2负载量显着提高(p≤0.05)(3.8μg/ g CO2 )。获得的收率仅占原始木脂素含量的一小部分(15 mg / g石油醚脱脂亚麻籽)。

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